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Formation of orange oil-in-water nanoemullsions using nonionic surfactant mixtures by high pressure homogenizer

机译:使用非离子表面活性剂混合物通过高压均化器形成橙色水包油纳米乳化剂

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The formation of nanoemulsions depends on the size of the droplets formed, the polydispersity and the difference in solubility and/or chemical potential between the small and large droplets. This article reports experiments to evaluate the formation of orange oil/water nanoemulsions in the presence of mixtures of nonionic surfactants, prepared in a high-pressure homogenizer. The surfactant mixtures were prepared to have different HLB values, by varying their type and concentration. The formation and stability of the nanoemulsions were evaluated as a function of the surfactant mixture used and also the processing conditions in the homogenizer. The size and distribution of the droplets formed, along with their stability, were determined in a Zetasizer Nano ZS particle size analyzer. The results showed that the optimal HLB range of the surfactant mixtures to obtain stable o/w nanoemulsions, independent of the processing conditions, is between 11 and 12. Better results were obtained with Unitol ~?L20/Unitol~?L100 mixtures, in which the hydrophobic surfactant causes a reduction in the interfacial tension and the hydrophilic surfactant promotes steric stabilization of the system.
机译:纳米乳液的形成取决于所形成的液滴的大小,多分散性以及大小液滴之间的溶解度和/或化学势的差异。本文报道了在高压均质机中制备的非离子表面活性剂混合物存在下,评价橙色油/水纳米乳液形成的实验。通过改变它们的类型和浓度,将表面活性剂混合物制备为具有不同的HLB值。根据所使用的表面活性剂混合物以及均化器中的加工条件来评估纳米乳液的形成和稳定性。在Zetasizer Nano ZS粒度分析仪中确定形成的液滴的大小和分布及其稳定性。结果表明,与加工条件无关,获得稳定的o / w纳米乳液的表面活性剂混合物的最佳HLB范围在11至12之间。使用Unitol〜?L20 / Unitol〜?L100混合物可获得更好的结果,其中疏水性表面活性剂引起界面张力的降低,而亲水性表面活性剂促进体系的空间稳定。

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